[1] Danish S N, Qureshi S R, Imran M M et al. Effect of tip clearance and rotor-stator axial gap on the efficiency of a multistage compressor[J]. Applied Thermal Engineering, 99, 988-995(2016).
[2] Wang X P, Wang Y R, Tian A M. Effect of axial spacing between rotor-stator on vibration stress of blade[J]. Journal of Aerospace Power, 31, 1427-1434(2016).
[3] Jiao J F, Song H C, Ji L C. Research on the effect of inter-row spacing on the shock wave structure and performance of turbine[J]. Journal of Engineering Thermophysics, 38, 62-67(2017).
[4] Zhang H, Hu J, Li C P et al. Effect of axial spacing between rotor and stator on axial compressor stability[J]. Journal of Aerospace Power, 20, 120-124(2005).
[5] Liu D J, Li J, Jiang A W et al. Influence of axial gap on compressor passage blockage and aerodynamic performance[J]. Acta Aeronautica et Astronautica Sinica, 36, 3522-3533(2015).
[6] Sheard A G, Turner S R. Electromechanical measurement of turbomachinery blade tip-to-casing running clearance[C](1992).
[7] Fabian T, Prinz F B, Brasseur G. Capacitive sensor for active tip clearance control in a palm-sized gas turbine generator[J]. IEEE Transactions on Instrumentation and Measurement, 54, 1133-1143(2005).
[8] Long C, Duan F J, Ouyang T. Application of superheterodyne FM reception in measurement of blade tip clearance[J]. Transducer and Microsystem Technologies, 28, 108-110(2009).
[9] Wang W M, Shang W, Yao J F et al. A blade tip-timing measurement study based on eddy current technology[J]. Journal of Beijing University of Chemical Technology (Natural Science Edition), 41, 102-107(2014).
[10] Woike M, Abdul-Aziz A, Clem M. Structural health monitoring on turbine engines using microwave blade tip clearance sensors[J]. Proceedings of SPIE, 9062, 90620L(2014).
[11] Wang D P, Jin X, Zhou W J et al. Nonlinear error calibration method for capacitive displacement sensor based on laser interferometry[J]. Laser & Optoelectronics Progress, 54, 101203(2017).
[12] Fang Z Q, Duan F J, Zhang Y G et al. Application of reflective optical fiber in vibration measurement for high-speed rotating blades[J]. Journal of Optoelectronics Laser, 18, 1348-1350(2007).
[13] Gil-García J M, Solís A, Aranguren G et al. An architecture for on-line measurement of the tip clearance and time of arrival of a bladed disk of an aircraft engine[J]. Sensors (Basel, Switzerland), 17(2017).
[14] Jia B H, He L, Yan G D et al. A differential reflective intensity optical fiber angular displacement sensor[J]. Sensors, 16, 1508(2016).
[15] Wu B, Zhang X D, Xie S Y. Influence of roughness and inclination of blade tip on output behavior of reflective fiber bundle sensor[J]. Aeroengine, 43, 75-80(2017).
[16] Guo H T, Duan F J, Wu G X et al. Blade tip clearance measurement of the turbine engines based on a multi-mode fiber coupled laser ranging system[J]. The Review of Scientific Instruments, 85, 115105(2014).
[17] Weng J D, Liu S G, Ma H L et al. Dynamic frequency-domain interferometer for absolute distance measurements with high resolution[J]. The Review of Scientific Instruments, 85, 113112(2014).
[18] Vakhtin A, Chen S J, Massick S. Optical probe for monitoring blade tip clearance[C](2009).
[19] Pang S, Luo Z C, Chang T Y et al. Similarity demodulation method of interferometric fiber optic sensing system[J]. Acta Photonica Sinica, 47, 0606003(2018).
[20] Jing L Q, Zheng G, Zhang X X et al. Nonlinear correction of frequency-modulated continuous wave interferometric laser sources[J]. Acta Optica Sinica, 39, 1114001(2019).
[21] Jing L Q, Zheng G, Sun B et al. Measurement of distance to moving target using frequency-modulated continuous-wave interference technique[J]. Chinese Journal of Lasers, 46, 1204001(2019).
[22] Zhang W, Xiong B, Shao B et al. A demodulation model of dynamic low-finesse Fabry-Perot cavity based on the instantaneous frequency[J]. IEEE Access, 8, 71074-71082(2020).
[23] Li Y T, Zhang F M, Pan H et al. Simulation of vibration compensation in frequency-modulated continuous-wave laser ranging system[J]. Chinese Journal of Lasers, 46, 0104001(2019).
[24] Martinez J J, Campbell M A, Warden M S et al. Dual-sweep frequency scanning interferometry using four wave mixing[J]. IEEE Photonics Technology Letters, 27, 733-736(2015).
[25] Chen X L, Wang X C, Pan S L. Laser ranging of frequency scanning interferometry system based on double-sideband modulation[J]. Acta Photonica Sinica, 46, 0612005(2017).
[26] Tao L, Liu Z G, Zhang W B et al. Frequency-scanning interferometry for dynamic absolute distance measurement using Kalman filter[J]. Optics Letters, 39, 6997-7000(2014).
[27] Zhang H Y, Tian X N, Lei Y Y et al. Frequency modulated continuous wave LIDAR based on injection-locking technology for simultaneous distance and speed measurement[J]. Acta Optica Sinica, 40, 1528001(2020).